Inflationary Dynamics and Thermodynamics of Chaplygin Gas Models
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Date
2018
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Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
In this thesis, we study the reconstruction of warm inflation model with
the help of tensor to scalar ratio (r) and scalar spectral index (ns) in terms
of number of e-folds (N). In this regards, we take flat FRW metric and
discuss the general forms of dissipative coefficient Γ(φ, T ) as well as effec-
tive potential V (φ, T ) for two dissipative regimes i.e., the weak and strong.
We use inflationary parameters like slow roll parameters, power spectrum
of the curvature perturbation, tensor spectrum, spectral index, scalar to
tensor ratio and Hubble parameter to find the generalized form of dissi-
pative coefficient and effective potential. Further, we discuss generalized
cosmic Chaplygin gas in the scenario of particle creation. We examine
energy density (ρ), Hubble parameter (H), declaration parameter (q), tem-
perature (T ) and particle number density (n) under three different models
of particle creation rate. We also analyze the production of entropy and
Bekenstein entropy in the scenario of first law of thermodynamics. We dis-
cuss the validity of generalized second law of thermodynamics and thermal
equilibrium under three models of Γ and discuss the graphical behavior of
above mentioned terms.
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Department of Mathematics, SP17, Mathematics, Chaplygin Gas, Cosmic Inflation, Thermodynamics, Dr. Abdul Jawadcv